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A Comparative Performance Evaluation of 2D Nanomaterials for Applications in Plasmonic Biosensing

机译:2D纳米材料在等级化生物腐蚀中应用的对比性能评价

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摘要

Plasmonic sensing relies on the interaction between the electromagnetic light wave and free electrons that reside at the interface of two materials, one of them being a metal. Surface plasmon resonance (SPR)-based biosensing has distinct advantages of providing real-time and label-free detection technique that is capable of giving accurate and repeatable results. 2D nanomaterials (graphene and transition metal dichalcogenides [TMDCs] such as MoS_2 and WS_2) have recently gained high popularity in the field of biomedical sciences. Using Biacore commercial SPR machine manufactured by GE Healthcare, the efficacy of various combinations of these materials coated on the plasmonic metal gold (Au) (Au + MoS_2, Au+WS_2, Au+graphene, Au +graphene + MoS_2, and Au + graphene + WS_2) is evaluated, in enhancing the sensitivity of the biosensor as compared with the standard Kretschmann configuration (only Au). Some simulation results are also presented at incident light wavelengths of 633 and 785 nm that are based on the angular interrogation method. To conclude, it is found that the sensitivity in the increasing order is: only Au<Au+MoS_2<Au+WS_2≈Au+graphene<Au+graphene+ MoS_2<Au+graphene+WS_2.
机译:等离子体传感依赖于驻留在两种材料界面处的电磁光波和自由电子之间的相互作用,其中一个是金属。基于表面等离子体谐振(SPR)的生物传感,具有提供实时和无标签检测技术的不同优点,该技术能够提供准确和可重复的结果。最近在生物医学科学领域获得了高度普及的2D纳米材料(如MOS_2和WS_2)在生物医学领域中获得了高普及的纳米材料(如MOS_2和WS_2)。采用GE Healthcare制造的Biacore Commercial SPR机,这些材料的各种组合的功效涂覆在等离子体金属金(Au)(Au + MOS_2,Au + Ws_2,Au + Graphene,Au + Graphene + MOS_2和Au +石墨烯上与标准KROTECHMANN配置相比,评估+ WS_2)在增强生物传感器的灵敏度方面进行评估,相比之下(仅AU)。一些仿真结果也呈现在633和785nm的入射光波长,其基于角度询问方法。为了得出结论,越来越多的顺序中的灵敏度是:仅Au

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  • 来源
    《Physica status solidi》 |2020年第17期|2000255.1-2000255.6|共6页
  • 作者单位

    CINTRA CNRS THALES NTU UMI 3288 Research Techno Plaza 50 Nanyang Drive Border X Block Singapore 639798 Singapore School of Electrical and Electronic Engineering Nanyang Technological University 50 Nanyang Avenue Singapore 639798 Singapore;

    CINTRA CNRS THALES NTU UMI 3288 Research Techno Plaza 50 Nanyang Drive Border X Block Singapore 639798 Singapore School of Electrical and Electronic Engineering Nanyang Technological University 50 Nanyang Avenue Singapore 639798 Singapore;

    Institute of Applied Physics and Materials Engineering University of Macau E12 Avenida da Universidade Taipa Macao China;

    School of Biological Sciences Nanyang Technological University 50 Nanyang Avenue Singapore 639798 Singapore;

    CINTRA CNRS THALES NTU UMI 3288 Research Techno Plaza 50 Nanyang Drive Border X Block Singapore 639798 Singapore Institut d'Electronique de Microelectronique et de Nanotechnologie(IEMN)CNRS UMR 8520- Universite de Lille 1 59650 Villeneuve d'Ascq France;

    Institute of Applied Physics and Materials Engineering University of Macau E12 Avenida da Universidade Taipa Macao China;

    CINTRA CNRS THALES NTU UMI 3288 Research Techno Plaza 50 Nanyang Drive Border X Block Singapore 639798 Singapore School of Electrical and Electronic Engineering Nanyang Technological University 50 Nanyang Avenue Singapore 639798 Singapore;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biacore surface plasmon resonance machine; sensitivity comparison; sensitivity simulation; surface plasmon resonance; 2D materials;

    机译:Biacore表面等离子体谐振机;敏感性比较;敏感性模拟;表面等离子体共振;2D材料;

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